电离层总电子含量测量问题中重传GPS信号的处理

Y. A. Kapliarchuk, S. V. Kozlov, I. E. Savinykh, A. S. Shapkin
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引用次数: 0

摘要

目标。基于中继器纳米卫星(SR)将L1 GPS导航信号重传至150/400 MHz地球物理研究专用频率并在地面接收点接收的电离层总电子含量估算方法,需要开发中继信号相干累积算法,并在几秒的观测间隔内测量其时延差。方法。该算法根据导航卫星(NS)、SR和RP相互空间运动的动态特性,对接收到的各中继频率信号进行相位解调;将结果乘以NS-RP路由上直接导航信号接收机产生的导航电文组合时延估计值,在与导航卫星信号匹配的滤波器中对整个观测时间进行周期内处理,并将周期内处理结果以单值范围间隔进行周期间相干累积。相干积累考虑到重传信号频率的随机不受控制的偏移,通过对周期内处理结果的周期间读数在延迟时间内形成的每个分辨率元素的向量进行离散傅里叶变换来实现,同时考虑到NS、SR和RP相互运动期间的距离偏移。结果。结果表明,利用相干累加器的输出信号,可以检测每个重传频率下的重传信号,准确测量延迟时间的差异,并估计SR-RP路径上的总电子含量。最后给出了仿真结果,验证了所提算法在估计SR-RP路由上总电子含量方面的有效性。结论。提出了一种接收重传信号相干累加和时延差测量的算法,并进行了仿真。该算法可用于基于GPS信号重传的TEC估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Processing of retransmitted GPS signals in the problem of measuring the total electron content in the ionosphere
Objectives . For a method for estimating the total electron content in the ionosphere based on the retransmission of the L1 GPS navigation signal by a repeater nanosatellite (SR) to the frequencies of 150/400 MHz allocated for geophysical research and their reception at a ground-based receiving point (RP), it is necessary to develop the algorithms for coherent accumulation of received relayed signals and measurement of the difference between their delays at observation intervals up to a few seconds. Methods . The proposed algorithms provide phase demodulation of the received signals at each of the relay frequencies in accordance with the dynamics of the mutual spatial movement of the navigation satellite (NS), SR and RP; multiplying the result by the estimate of the navigation message combined time delay, generated by the receiver of the direct navigation signal on the NS-RP route, intra-period processing over the entire duration of the observation in a filter matched with the signal of the navigation satellite, and inter-period coherent accumulation of the results of intra-period processing at a single-valued range interval. Coherent accumulation, taking into account a random uncontrolled shift in the frequency of the retransmitted signal, is implemented by discrete Fourier transform of the vectors formed for each resolution element in the delay time from inter-period readings of the results of intra-period processing, taking into account the range migration during the mutual movement of the NS, SR and RP. Results . It is shown that by the output signal of the coherent accumulator makes it is possible to detect retransmitted signals at each of the retransmission frequencies, to measure accurately the difference in delay times, and estimate the total electron content on the SR-RP path. The results of modeling are presented, confirming the efficiency of the proposed algorithms in estimating the total electron content on the SR-RP route. Conclusion . An algorithm for coherent accumulation of received retransmitted signals and measurement of the difference between their delays is developed, and its simulation is performed. The algorithm can be used for estimating TEC based on the retransmission of signals from GPS.
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